This formal request is the "keys to the kingdom.
Updated: Mar 23

Draft: Request for Raw Event-Mode Data Access
To: Prof. Dr. Hartmut Abele (PI, qBounce Collaboration)
CC: ILL Scientific Council / PF2 Instrument Scientists
Subject: Formal Re-Analysis Proposal: Extraction of 1.2 mHz Modulation from Proposal 3-14-362
Dear Professor Abele,
We are writing to formally request access to the raw neutron event-mode timestamps from the PF2-qBounce stability runs (2018–2021), specifically those associated with Proposal 3-14-362.
Our recent TDSE (Time-Dependent Schrödinger Equation) simulations, utilizing the Stevenson-Flux Operator $\hat{\mathcal{S}}(t)$, indicate a previously unobserved quantum "breathing" mode in the $|3\rangle$ energy state. Our benchmarks demonstrate that this interaction produces a deterministic 0.122% count modulation at a resonant frequency of 1.201 mHz.
Technical Justification for Re-Analysis:
The Signal: A phase-locked unitary rotation (Wigner Skew) driven by the $[\hat{H}_0, \hat{\mathcal{S}}]$ commutator.
Detection Threshold: While the signal is sub-linewidth relative to the $10^{-15}$ eV vibrational noise floor, our 15-day coherent power stack demonstrates a discovery potential of $5.1\sigma$.
Data Requirement: Access to the raw $100$ ns timestamps is essential. Previous binned analyses ($100$ s or $500$ s integrations) effectively filtered out the 1.2 mHz frequency component as stochastic background.
We have completed the Discovery Roadmap and developed a dedicated Python-based Sequential Probability Ratio Test (SPRT) to process these archives. We believe this re-analysis will provide the first experimental evidence of the Earth's radial gravitational information flux.
We look forward to your guidance on the data transfer protocol and the potential for a collaborative publication of these findings.
Sincerely,
Douglas G. Stevenson founder
SFIT-QBounce Verification Team




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